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Articles 751 - 780 of 5791
Full-Text Articles in Neuroscience and Neurobiology
Compensatory Changes In The Visual System As A Result Of Neurodegeneration, Liz Bierlein
Compensatory Changes In The Visual System As A Result Of Neurodegeneration, Liz Bierlein
Theses & Dissertations
The brain has the remarkable ability to compensate for damage and maintain physiological set points. In the visual system where even after significant damage has been done, the brain fills in visual gaps because of this compensation. This thesis attempts to understand several components of visual changes after damage in disorders such as glaucoma. This was accomplished by using several models of vision loss in mice including the DBA/2J (D2) and silicone oil (SO) models of glaucoma, the RD10 model of retinitis pigmentosa, and a retina-specific knockout of brain-derived neurotrophic factor (BDNF)— the Chx10-cre; BDNFfl/fl mouse. Through these models …
Individual Differences In Age And Testosterone Are Uniquely Associated With Neural Oscillatory Activity Serving Verbal Working Memory In Children And Adolescents, Abraham D. Killanin
Individual Differences In Age And Testosterone Are Uniquely Associated With Neural Oscillatory Activity Serving Verbal Working Memory In Children And Adolescents, Abraham D. Killanin
Theses & Dissertations
During the sensitive period of adolescence, the human brain undergoes dynamic changes in structure and function resulting in vast executive function gains. Verbal working memory (VWM) is one executive function that serves as a foundation to language acquisition, reading, and learning. Many have examined the development of VWM in youth, but few have probed age-related changes in the underlying neural oscillatory dynamics, and none have examined testosterone-related changes. We recorded magnetoencephalography during a modified Sternberg VWM task in 82 youth participants aged 6 – 14 years old and collected salivary testosterone samples. Significant oscillatory responses were identified and imaged using …
The Relationship Between Amygdala And Orbitofrontal Cortex Volume In The Context Of Oppositional Defiant Disorder, Rahul Alla
Honors Scholar Theses
Disobedient and rebellious attitude in children is on the rise and this type of behavior is categorized as Oppositional Defiant Disorder (ODD). ODD in children can be identified as a persistent pattern of angry or irritable mood, argumentative or defiant behavior or vindictiveness toward others according to the Diagnostic and Statistical Manual (DSM-5, Fifth Edition) of Mental Disorders.1 Children with ODD typically have difficulty regulating and processing their emotions. Issues with regulating emotions is defined as the process by which individuals “influence which emotions they have, when they have them, and how they experience and express them”.2 Dysregulation of emotions …
The Effect Of Repetitive Transcranial Magnetic Stimulation On Brain And Cognitive Variables In Patients With Amnestic Mild Cognitive Impairment, Connor J. Phipps
The Effect Of Repetitive Transcranial Magnetic Stimulation On Brain And Cognitive Variables In Patients With Amnestic Mild Cognitive Impairment, Connor J. Phipps
Theses & Dissertations
Healthy and pathological aging processes can impact human memory. Current interventions for clinical memory impairment offer little opportunity for restoration of memory ability. Fortunately, a novel therapy in the form of repetitive transcranial magnetic stimulation (rTMS) has exhibited promise in this regard. In healthy adults, rTMS of the angular gyrus (AG) has been reported to improve memory. The current study sought to determine the generalizability of these findings to individuals with clinical memory impairment by administering a clinical trial replicating an rTMS protocol reported to improve hippocampal-dependent memory in healthy individuals to individuals with amnestic mild cognitive impairment (aMCI). Individuals …
Interactions Between Repetitive Mild Traumatic Brain Injury And Methylphenidate Administration On Catecholamine Transporter Protein Levels Within The Rodent Prefrontal Cortex, Anna Abrimian, Eleni Papadopoulos, Christopher P. Knapp, J. Loweth, Barry Waterhouse, Rachel Navarra
Interactions Between Repetitive Mild Traumatic Brain Injury And Methylphenidate Administration On Catecholamine Transporter Protein Levels Within The Rodent Prefrontal Cortex, Anna Abrimian, Eleni Papadopoulos, Christopher P. Knapp, J. Loweth, Barry Waterhouse, Rachel Navarra
Rowan-Virtua Research Day
It is theorized that low concentrations of dopamine (DA) and norepinephrine (NE) within in the prefrontal cortex (PFC) following traumatic brain injury (TBI) leads to increased risky behavior. Our lab has shown that repeated mild TBI (rmTBI) sex-differentially increases risky behavior in a rodent model. Methylphenidate (MPH) is a psychostimulant drug used to treat symptoms of Attention-Deficit Hyperactivity Disorder (ADHD), also driven by a hypo-catecholaminergic PFC. MPH elevates catecholamine levels by blocking DA and NE transporters, DAT and NET. While the potential of psychostimulants to treat post-TBI symptoms have been explored, the effects of sub-chronic MPH on transporter levels following …
A Preliminary Report On The Role Of Lipoxin A4 In Reinstating The Blood-Brain Barrier Integrity In A Rodent Model Of Acute Inflammation With Impaired Cerebrovasculature, Minjal Patel, Shruti Varshney, Ananya Nethikunta, George G. Godsey, Mary C. Kosciuk, Ana Rodriguez, Bernd Spur, Kingsley Yin, Randel L. Swanson, Venkat Venkataraman, Robert G. Nagele, Nimish Acharya
A Preliminary Report On The Role Of Lipoxin A4 In Reinstating The Blood-Brain Barrier Integrity In A Rodent Model Of Acute Inflammation With Impaired Cerebrovasculature, Minjal Patel, Shruti Varshney, Ananya Nethikunta, George G. Godsey, Mary C. Kosciuk, Ana Rodriguez, Bernd Spur, Kingsley Yin, Randel L. Swanson, Venkat Venkataraman, Robert G. Nagele, Nimish Acharya
Rowan-Virtua Research Day
Background: The blood-brain barrier (BBB) is responsible for maintaining brain homeostasis and ultimately proper neuronal function. Disruption of the BBB, leading to increased BBB permeability, has been reported in several neurodegenerative diseases, including Alzheimer’s disease (AD) and traumatic brain injury (TBI). Lipoxins (LXs) are a class of arachidonate-derived eicosanoids, which are a class of specialized pro-resolving lipid mediators (SPMs). SPMs are known to inhibit immune response through inhibition of cellular infiltration, downregulation of pro-inflammatory mediators and upregulation of anti-inflammatory mediators. Hence, LXs are recognized as “breaking signals” in the inflammatory process. One form of LXs, Lipoxin A4 (LXA4) …
How Does Schizophrenia Affect The Expression Of Alpha 7 Nicotinic Acetylcholine Receptors In The Brain?, Shruti Varshney, Nimish Acharya
How Does Schizophrenia Affect The Expression Of Alpha 7 Nicotinic Acetylcholine Receptors In The Brain?, Shruti Varshney, Nimish Acharya
Rowan-Virtua Research Day
Schizophrenia (SZ) is a psychiatric disorder with a pathophysiology that has not yet been fully understood. This mental illness is characterized by disruptions in cognition, social activity, affect, and perception, and affects approximately 0.085% of individuals worldwide. The Alpha 7 Nicotinic Acetylcholine Receptor (α7nAChR) has been connected to auditory function gating deficits. The purpose of this review is to understand the current literature in how the levels of α7nAChR expression and function are affected by SZ, information that could be used to develop therapies to modulate auditory hallucinations in patients with SZ. A literature search was conducted for peer-reviewed journal …
The Neuroprotective Role Of Lipoxin A4 In Reinstating Blood Brain Barrier Integrity In Neuroinflammatory Disease Processes, Minjal Patel, Nimish Acharya
The Neuroprotective Role Of Lipoxin A4 In Reinstating Blood Brain Barrier Integrity In Neuroinflammatory Disease Processes, Minjal Patel, Nimish Acharya
Rowan-Virtua Research Day
Background: The blood-brain barrier (BBB), formed by the vascular endothelium, astrocytic foot processes, pericytes, is a highly selective barrier that is responsible for maintaining brain homeostasis and ultimately proper neuronal function. Disruption of the BBB, leading to increased BBB permeability, has been reported in several neurodegenerative diseases, including Alzheimer’s disease (AD) and traumatic brain injury (TBI).1 Loss of BBB integrity leads to the proliferation of pro-inflammatory cytokines, including TNFɑ, IL-1β, and IL-6.2 Moderate inflammation has a beneficial response in the system following an acute injury. However, prolonged inflammation has been known to perturb homeostasis and have …
The Impact Of Traumatic Brain Injury On Noradrenergic Innervation Of The Prefrontal Cortex, Jil P. Modi, Christopher P. Knapp, Rachel L. Navarra
The Impact Of Traumatic Brain Injury On Noradrenergic Innervation Of The Prefrontal Cortex, Jil P. Modi, Christopher P. Knapp, Rachel L. Navarra
Rowan-Virtua Research Day
Traumatic Brain Injury (TBI) is a common cause of death and disability in the United States, and it can occur due to varied reasons including motor vehicle accidents, gunshot wounds, and falls. Following TBIs, patients are often left with lifelong disabilities and cognitive problems that can lead to increased risk-taking behaviors. The main goal of my research was to understand the neural mechanisms that drive increased risk-taking behaviors due to TBIs. The specific areas of the brain I was interested in looking at were the medial prefrontal cortex (mPFC), orbitofrontal cortex (OFC), and/or anterior cingulate cortex (ACC) of the prefrontal …
Effect Of Dosage On Severity Of Dysphagia In A Toxicological Rat Model Of Parkinson's Disease, Shivam Patel, Taylor Good, Nicholas Zanghi, Francois Gould
Effect Of Dosage On Severity Of Dysphagia In A Toxicological Rat Model Of Parkinson's Disease, Shivam Patel, Taylor Good, Nicholas Zanghi, Francois Gould
Rowan-Virtua Research Day
Parkinson’s Disease (PD) is a prevalent and devastating neurodegenerative disorder that causes progressively worsening motor symptoms affecting locomotor and oropharyngeal function. There is limited research in animal models on swallowing dysfunction in PD. To examine how neurodegeneration in PD produces progressive impairment in the oropharyngeal and locomotor processes, rotenone, a type II mitochondrial inhibitor, was injected into Lewis rat models to reproduce a parkinsonian phenotype. We hypothesized that the animal models injected with the rotenone will exhibit both oropharyngeal dysfunction and locomotor deficiency with an increased deficit that correlates with prolonged treatment. We utilized 18 rats receiving either 2.75 mg/kg …
Pediatric Neurotropic Infection Alters Synaptic Development In The Developing Brain, Anuoluwapo Grace Fadare, Yashika S. Kamte, Manish N. Chandwani, Lauren A. O'Donnell
Pediatric Neurotropic Infection Alters Synaptic Development In The Developing Brain, Anuoluwapo Grace Fadare, Yashika S. Kamte, Manish N. Chandwani, Lauren A. O'Donnell
Rowan-Virtua Research Day
Many neurotropic viruses cause more significant pathology in younger hosts as their brains are still developing. This experiment asked how central nervous system (CNS) viral-infections affect the development of synapses in the pediatric brain during infection and post-infection. Synaptogenesis is at its peak in pediatric mice (10 days old) and we hypothesized that a neurotropic infection could disrupt synaptic proteins. We used a transgenic mouse model where measles virus (MV) infects only mature neurons, leading us to question whether synapses were impacted. We examined synaptic markers in the cerebellum and hippocampus in MV-infected and uninfected mice 9 days and 90 …
Intra-Accumbens Microinfusion Of The Dopamine D3 Receptor Partial Agonist (±)Vk4-40 Does Not Affect Basal Locomotion In Mice, Yeonwoo Sim, Nicole M. Hinds, Amy Hauck Newman, Daniel F. Manvich
Intra-Accumbens Microinfusion Of The Dopamine D3 Receptor Partial Agonist (±)Vk4-40 Does Not Affect Basal Locomotion In Mice, Yeonwoo Sim, Nicole M. Hinds, Amy Hauck Newman, Daniel F. Manvich
Rowan-Virtua Research Day
The opioid epidemic remains a pressing public health crisis, prompting the search for alternative pharmacotherapies for Opioid Use Disorder (OUD). This study explores the potential of the dopamine D3 receptor (D3R) partial agonist, (±)VK4-40, as a novel treatment option. We investigated the impact of intra-nucleus accumbens (NAc) microinfusion of VK4-40 on basal locomotion in mice. Results indicate that VK4-40 did not significantly alter basal locomotion, suggesting that its therapeutic effects may not be mediated through disruptions in generalized motor function. Future research will focus on elucidating the neuropharmacological mechanisms underlying VK4-40's therapeutic actions and exploring its effects on psychostimulant-induced hyperlocomotion. …
Alpha 7 Nicotinic Acetylcholine Receptor Expression In The Hippocampus Of Patients With Schizophrenia, Shruti Varshney, Ananya Nethikunta, Minjal Patel, Mary Kosciuk, Randel L. Swanson, Venkat Venkataraman, Robert Nagele, Eric Goldwaser, Nimish K. Acharya
Alpha 7 Nicotinic Acetylcholine Receptor Expression In The Hippocampus Of Patients With Schizophrenia, Shruti Varshney, Ananya Nethikunta, Minjal Patel, Mary Kosciuk, Randel L. Swanson, Venkat Venkataraman, Robert Nagele, Eric Goldwaser, Nimish K. Acharya
Rowan-Virtua Research Day
Background: Schizophrenia (SZ) is a heterogenous psychiatric condition characterized by disruptions in cognition, social activity, affect, and perception often associated with a varied combination of positive and negative symptoms. The pathophysiology behind SZ remains poorly elucidated. Earlier reports have cited the importance of the alpha 7 nicotinic acetylcholine receptors (α7nAChR) in the hippocampus and the receptor’s association with auditory sensory gating and cognitive function. Specifically, variations in the expression and functionality of α7nAChR can be linked to auditory hallucinations experienced by patients with SZ and several therapies have been researched that target α7nAChRs. However, there are very few primary research …
Microglial Dynamics And Mechanisms Underlying The Phagocytosis Of Dying Oligodendrocytes, Genaro E. Olveda
Microglial Dynamics And Mechanisms Underlying The Phagocytosis Of Dying Oligodendrocytes, Genaro E. Olveda
Dartmouth College Ph.D Dissertations
Myelin is a complex multilamellar structure, generated by oligodendrocytes, that ensheaths axons and is a vital component for neural processing. Degeneration of both oligodendrocytes and their myelin sheaths is a common pathological feature associated with aging and neurodegenerative diseases. Efficient removal of the cellular and myelin debris is crucial for remyelination and prevention of further degeneration. Microglia, the primary phagocytes of the CNS, are thought to play a key role in this process. To investigate the cellular dynamics underlying microglia-mediated clearance of degenerating oligodendrocytes and myelin sheaths, at the single cell level, we developed a novel model for inducible cortical …
Alcohol Reward Memory In Drosophila: Investigating Changes In Neural Activity In Response To Cues Alcohol Associations And Their Role In Regulating Other Alcohol-Related Behaviors., Marieke Guitink
Honors Projects in Biological and Biomedical Sciences
With more than 200 health conditions associated with Alcohol Use Disorder, excessive drinking can take a serious toll on an individual's health, mental health, and relationships. Despite significant disruptions, there are a few treatments for Alcohol Use Disorder that support long-term abstinence. To develop effective long-term treatments for Alcohol Use Disorder, it is essential to obtain an understanding of the underlying complex changes that alcohol has on the brain, however, the complexity of the mammalian nervous system has precluded researchers from achieving this. Drosophila melanogaster is a powerful model organism for investigating how alcohol hijacks neural circuits within the brain …
Isolation Of Aged Mouse Primary Microglia As A Model System For Alzheimer’S Disease Research, Michael Landis
Isolation Of Aged Mouse Primary Microglia As A Model System For Alzheimer’S Disease Research, Michael Landis
Biology Honors Papers
Microglia and their role as the immune cells of the central nervous system are an emerging area of interest within Alzheimer’s research, particularly as they have shown in a benevolent and malevolent cellular context. Models of Alzheimer’s disease are very light in studying microglia, so in this study a model of microglia isolated from aged mice is established in order to study the phagocytic activity and protein expression of microglia in response to Amyloid Beta. The cells were isolated from aged mice and cultured before being used to confirm cellular identity, as well as to measure phagocytic activity. This study …
Easter Island's Painkiller: How A Soil Bacteria Could Relieve Chronic Pain, Marko Krtinic
Easter Island's Painkiller: How A Soil Bacteria Could Relieve Chronic Pain, Marko Krtinic
Scientific Kenyon: The Neuroscience Edition
No abstract provided.
Resonant Perceptions: Exploring Autistic Aesthetics Through Embodied Cognition, James Hutson, Piper Hutson
Resonant Perceptions: Exploring Autistic Aesthetics Through Embodied Cognition, James Hutson, Piper Hutson
Faculty Scholarship
No abstract provided.
Towards Understanding The Function Of An Ets-Like Gene In Nematostella Vectensis: Generation Of A Knockout Mutant Line And A Transgenic Reporter Line, Emily Bullock
Biological Sciences Undergraduate Honors Theses
Due to their unique phylogenic position as sister to Bilateria, Cnidaria are often credited with the utility of allowing for reconstruction of ancestral biology based on characteristics shared with bilaterians and other animals. This factor makes investigation into the nervous systems of cnidarians critical in understanding early neural evolution. Wamides, a class of neuropeptides, have been shown to play a regulatory role in life cycle transitions across many different species. The cnidarian specific Wamide neuropeptide, GLWamide, has previously been identified to play an accelerator role in the metamorphic timing of a specific species of sea anemone, Nematostella vectensis. However, …
Exploring The Neuroprotective Effects Of Cannabinoids On Oxygen Glucose Deprived Neurons In An In-Vitro Model Of Stroke, Bhavya Chatragadda, Emily Potts, Hang Ma, Navindra Seeram, Claudia Fallini
Exploring The Neuroprotective Effects Of Cannabinoids On Oxygen Glucose Deprived Neurons In An In-Vitro Model Of Stroke, Bhavya Chatragadda, Emily Potts, Hang Ma, Navindra Seeram, Claudia Fallini
Senior Honors Projects
Stroke is a leading cause of long-term disability and decreased mobility worldwide. During stroke, neuronal damage results from both the initial oxygen-glucose deprivation and the increase in excitotoxicity and oxidative stress after restoration of blood flow, a phase called Ischemia-Reperfusion Injury (IRI). Reducing the impact of these processes could result in better outcomes for post-stroke patients by preventing excessive neuronal death. Many natural compounds derived from the Cannabis Sativa plant have been tested for neuroprotective effects due to their potential antioxidant properties. We hypothesized that neurons treated with cannabinoids immediately after experiencing an acute ischemic event will have an overall …
Transcranial Magnetic Stimulation And The Rtpj (Right Teaching Parietal Junction), Molly Skowron
Transcranial Magnetic Stimulation And The Rtpj (Right Teaching Parietal Junction), Molly Skowron
Theses, Dissertations and Culminating Projects
Theory of Mind (ToM) is conceptualized as the ability to infer the thoughts and feelings of others. Many studies have found that ToM abilities play a central role in collaborative communication between adults, and that teachers are more effective when they have high levels of ToM. One of the main brain regions implicated in ToM is the right temporoparietal junction (rTPJ), which is thought to be responsible for evaluating a person’s belief formation process. The current study had participants engage in a Lego model building task consisting of a director who instructed a builder on how to create duplicate models …
Maternal Experience-Driven Changes In Oxytocin Neuron Co-Localization With Crf Receptors In The Hypothalamus Of Mice, Katherine Parra
Maternal Experience-Driven Changes In Oxytocin Neuron Co-Localization With Crf Receptors In The Hypothalamus Of Mice, Katherine Parra
Legacy Theses & Dissertations (2009 - 2024)
The postpartum period is a time of adaptiveness for new mothers who have to not only maintain their own health and well-being, but also that of a brand-new life. In both humans and across various common laboratory species like rats, mice, and non-human primates, priorities must shift greatly for a new mother to now include initiation and maintenance of offspring-focused behaviors regardless of her circumstances.The neurobiology of this adaptivity includes a complex sequence of changes that amount to suppression of hypothalamic-pituitary-adrenal (HPA) axis activity. Corticotropin-releasing factor receptor 1 (CRFR1) is a receptor involved with initiating the physiological stress response and …
Sdf-1Α Mediates Primary Tumor Escape In Glioblastoma Through Activation Of Mesenchymal Transitions., Charles T. Froman-Glover
Sdf-1Α Mediates Primary Tumor Escape In Glioblastoma Through Activation Of Mesenchymal Transitions., Charles T. Froman-Glover
College of Arts & Sciences Senior Theses
Glioblastoma (GBM), a highly aggressive primary brain tumor originating in glial cells, poses a significant challenge due to its rapid growth and invasive nature within healthy brain tissue.
Current treatments involve surgical resection, chemotherapy, and radiation. These treatments alone are not enough to cure this disease, and a better understanding the mechanics of the tumor micro-environment is imperative to furthering the field of cancer research. This research focuses on understanding the tumor microenvironment's impact, specifically investigating the role of stromal cell-derived factor 1 (SDF-1) mechanics on GBM aggressiveness. SDF-1 is known to facilitate disease progression by facilitating chemotaxis toward the …
Fighting For A Health Diagnosis: An Autoethnographic Journey Into The Role Of Access And Limitations Of Resilience In The Face Of Poverty, Josette Pelatan
Fighting For A Health Diagnosis: An Autoethnographic Journey Into The Role Of Access And Limitations Of Resilience In The Face Of Poverty, Josette Pelatan
Open Access Theses & Dissertations
This research represents a highly personalized account of the complexities, interpretations, and reflections of the journey of a doctoral student navigating the challenges of health through access on a U.S.-Mexico border. Using myself as the subject and the researcher in the social context of schooling provided the impetus for this self-study. Through an insider’s vantage point, I have chronicled and traced the experiences of my own identities’ transitions and multilayered intersectionality using the qualitative methodology of autoethnography. This genre of qualitative research brings the reader closer to the subculture studied through the author’s experiences.
While every story has its unique …
Assessing The Role Of Stim1 And Stim2 In Microglial Response To Spinal Cord Injury., Sarayu Alli
Assessing The Role Of Stim1 And Stim2 In Microglial Response To Spinal Cord Injury., Sarayu Alli
College of Arts & Sciences Senior Theses
Microglia, immune cells of the central nervous system, constantly survey their environment for damage. Once damage is detected, they are activated into become reactive, resulting in morphological changes, such as larger cell bodies, and functional changes, such as releasing inflammatory mediators. The switch from surveying to reactive occurs because the microglia received signals that sense danger in the environment. The release of Ca2+ from intracellular stores is involved in store-operated calcium entry (SOCE), a signaling pathway. Recent studies have shown that calcium release from the intracellular stores is a factor of microglial activation. SOCE is specific to monitoring low calcium …
Optimization Of Tyrosine Hydroxylase Antibody For Immunohistochemistry Fluorescence Detection In Zebrafish (Danio Rerio), Madison Thurber
Optimization Of Tyrosine Hydroxylase Antibody For Immunohistochemistry Fluorescence Detection In Zebrafish (Danio Rerio), Madison Thurber
Theses/Capstones/Creative Projects
Dopamine is an important neurotransmitter produced through the catecholamine synthesis pathway that affects brain activity. Unregulated dopamine levels can lead to various diseases such as Parkinson’s Disease or attention deficit hyperactivity disorder (ADHD). Optimization of an immunohistochemistry protocol will allow for the quantification of tyrosine hydroxylase antibody, which indirectly allows for dopamine quantification in dopaminergic regions within the brain. However, the antibody concentration to give the optimal signal-to-noise ratio in IHC varies across studies. Through this experiment, I determined the concentration of tyrosine hydroxylase (TyrH) antibody for immunohistochemistry that gave the best signal-to-background noise ratio within several known dopaminergic regions …
Determining Efficacy Of Check/Solid Stimuli Pair Vs Light/Dark Stimuli Pair For Pavlovian Fear Learning In Zebrafish (Danio Rerio), Kortney Johnson
Determining Efficacy Of Check/Solid Stimuli Pair Vs Light/Dark Stimuli Pair For Pavlovian Fear Learning In Zebrafish (Danio Rerio), Kortney Johnson
Theses/Capstones/Creative Projects
Learning is a survival skill because it allows organisms to recall vital details about their habitats. Associative learning is another of those skills, the ability to pair two different stimuli in memory and associate them together upon recall. It has been studied in zebrafish with Pavlovian fear learning used as a methodology. Previous studies have utilized Check/Solid patterning, however, there are no published studies exploring alternative stimuli that could be effective in aversive learning. This study sought to determine if Check/Solid was the most effective at inducing aversive learning or if Light/Dark would be more efficient, due to zebrafish’s natural …
Competition And Criticality In Cortical Neural Circuits Underlie Behavior And Optimize Working Memory, Jacob Harrison Barfield
Competition And Criticality In Cortical Neural Circuits Underlie Behavior And Optimize Working Memory, Jacob Harrison Barfield
Graduate Theses and Dissertations
One of the primary goals of neuroscience is to explain how brain function emerges from dynamic interactions among large populations of neurons. A long-standing hypothesis at the interface of physics and neuroscience posits that neural circuits may operate close to the critical point of a phase transition. In this dissertation, we will investigate a new form of criticality and the implications that it has in working memory and the generation of voluntary body movements. We will utilize this new form of criticality to investigate the functional benefits that can be harnessed by operating near the critical point when performing working …
Medial Prefrontal Cortex Fnirs Activity While Viewing Nature And Urban Scenes: The Search For Neurological Evidence Of Nature's Transcendent Self-Diminishment Effect, Haylee V. Snyder
All NMU Master's Theses
Prior research suggests that exposure to nature increases prosociality. One of the theories as to why this happens is that nature can elicit self-diminishment which leads to the positive experience of paying less attention to oneself. To better understand the neural processes behind this, this study used functional near-infrared spectroscopy (fNIRS) to measure activity in the medial prefrontal cortex (mPFC) which is related to the self-concept. Participants were shown 12 images divided into four blocks separated by image types. Six were entirely natural scenes (three pleasant and three unpleasant), and six were entirely urban scenes (three pleasant and three unpleasant). …
Loss Of Tsc2 Results In Abnormal Postnatal Neurogenesis And Striatal Hamartomas, Victoria Riley
Loss Of Tsc2 Results In Abnormal Postnatal Neurogenesis And Striatal Hamartomas, Victoria Riley
All Dissertations
Billions of years of evolution have culminated in the most complex organ in all of biology: the brain. Its capacity to sense, store, and predict information uniquely bestows humans with the capability to generate art, music, language, and math and sets humans apart from other species. It is therefore prudent and worthwhile to study the brain and its development. A critical aspect of brain development is neurogenesis, or the production of neurons. Neurogenesis is facilitated by neural stem cells (NSCs) and is influenced by the mTORC1 signaling pathway. For NSCs to differentiate and become committed to a neuronal cell fate, …